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reverse jet washing nozzle. Chem J Chinese U 27(6):937–944
12. Steven FM, Linda KW, Kanson X (2005) A new technology for FCC tail gas desulfurization
and dust removal Dyna-Wave reverse spraying washing tower. Pet Refin Eng 35(2):25–29
13. Li QP, Shao GX (2001) Calculation of height of liquid spray from dynamic wave wet scrubber
and resistance loss. J Chem Fertilizer Ind 28(6):26–28
14. Zhou DJ, Huang DS (2004) Hydrodynamics characteristics of the dynawave equipment. Chem
Engineer 100(1):17–19
15. Huang DS, Zhou DJ (2005) Removal of SO 2 from flue gas using dynamic wave reversal jet
scrubber. Environ Protection Chem Ind 5:406–408
16. Wang Y, Du LH, Xu JA, Li QP (2015) Experimental study on performance of dynamic wave
scrubber. Chem Eng 43(9):58–62
X. Li et al.
10. Wang S, Wang ZR (2014) Numerical analysis of dedusting effects of harmful dust in confined
workplace. Appl Mech Mater 556–562:4103–4108
11. Chen S, Fan YP, Lu CX (2013) The gas-liquid two-phase mass transfer characteristics of a new
reverse jet washing nozzle. Chem J Chinese U 27(6):937–944
12. Steven FM, Linda KW, Kanson X (2005) A new technology for FCC tail gas desulfurization
and dust removal Dyna-Wave reverse spraying washing tower. Pet Refin Eng 35(2):25–29
13. Li QP, Shao GX (2001) Calculation of height of liquid spray from dynamic wave wet scrubber
and resistance loss. J Chem Fertilizer Ind 28(6):26–28
14. Zhou DJ, Huang DS (2004) Hydrodynamics characteristics of the dynawave equipment. Chem
Engineer 100(1):17–19
15. Huang DS, Zhou DJ (2005) Removal of SO 2 from flue gas using dynamic wave reversal jet
scrubber. Environ Protection Chem Ind 5:406–408
16. Wang Y, Du LH, Xu JA, Li QP (2015) Experimental study on performance of dynamic wave
scrubber. Chem Eng 43(9):58–62
